Nagoya University, Chikusa-ku, Nagoya, Aichi, Japan.
Tokyo Metropolitan University, Hino, Tokyo, Japan.
PLoS One. 2024 Feb 14;19(2):e0298045. doi: 10.1371/journal.pone.0298045. eCollection 2024.
Investigating the fall recovery motion mechanism is crucial to prevent fall injuries. Among the various parameters of motion and posture, the forward moment can be considered the representative parameter of the magnitude of tripping from a kinematic perspective. The effect of increasing the forward moment on the recovery motion after tripping was investigated in this study. A tripping experiment was performed on a treadmill, and the recovery motion was observed. The forward moment was artificially increased using several approaches, such as pulling the torso, increasing gait speed, and increasing body mass. Factor analysis was performed to establish the relationship between the recovery motion parameters and forward moment. The distribution of the factor scores implied the uniqueness of the recovery motion of the pull condition. Although the forward moment temporarily increased, it was compensated quickly. The other conditions and factors indicated qualitative similarity of the recovery motion among the different conditions. This study demonstrates that the recovery motion after tripping is robust against an increase in forward moment, regardless of the method used to increase the forward moment. The investigation of reaction motion pattern enables validation of the recovery motion and falling posture estimation. Such fall simulations will facilitate the development of a method of fall prevention and mitigation.
研究跌倒后恢复运动的机制对于预防跌倒损伤至关重要。在运动和姿势的各种参数中,从运动学角度来看,前向力矩可以被认为是绊倒时的代表参数。本研究探讨了增加前向力矩对绊倒后恢复运动的影响。在跑步机上进行了绊倒实验,并观察了恢复运动。通过几种方法,如拉躯干、增加步速和增加体重,人为地增加了前向力矩。进行了因子分析以建立恢复运动参数和前向力矩之间的关系。因子得分的分布暗示了拉条件下恢复运动的独特性。尽管前向力矩暂时增加,但很快就得到了补偿。其他条件和因子表明,不同条件下的恢复运动具有定性相似性。本研究表明,无论增加前向力矩的方法如何,绊倒后的恢复运动都是稳健的。对反应运动模式的研究可以验证恢复运动和跌倒姿势的估计。这种跌倒模拟将有助于开发跌倒预防和缓解的方法。